2023年5篇代表性论文:
1. J. Song, et al., Mengtao Sun* Superior Thermoelectric Properties of Twist-Angle Superlattice Borophene Induced by Interlayer Electrons Transport, Small, 2023, 19, 2301348.
2. W. Li, et al., Mengtao Sun,* Superior thermoelectric properties of bulk and monolayer fullerene networks, Journal of Materials Chemistry A, 2023, 11, 3949.
3. J. Song, et al., Mengtao Sun,* Challenging breaking thermoelectric performance limits by twistronics, Journal of Materials Chemistry A, 2023, 11, DOI:10.1039/D3TA02283H.
4. J. Dong,* et al., Mengtao Sun*, Preparation of a Three-Dimensional Composite Structure Based on a Periodic Au@Ag Core−Shell Nanocube with Ultrasensitive Surface-Enhanced Raman Scattering for Rapid Detection, ACS Appl. Mater. Interfaces, 2023, 15, 23, 28840.
5. C. Li, et al., M. Sun*, Electronic, Optoelectronic, and Thermoelectric Single Molecule Devices with Different Molecular Unit-Length, Adv. Electron. Mater. 2023, 9, 2300063.
2022年10代表性论文:
1. Y. Cao and Mengtao Sun,* Perspective on plexciton based on transition metal dichalcogenides, Appl. Phys. Lett. 120, 240501 (2022).
2. Y. Chen, Y. Cheng, Mengtao Sun,* Nonlinear plexcitons: excitons coupled with plasmons in two-photon absorption, Nanoscale, 14, 7269 (2022).
3. R. Yang, Mengtao Sun,* Bilayer borophene synthesized on Ag(111) film: Physical mechanism and applications for optical sensor and thermoelectric devices, Mater. Today Phys. 23, 100652 (2022).
4. Y. Cao, Mengtao Sun,* Tip-enhanced Raman spectroscopy, Rev. Phys. 8, 100067 (2022).
5. Y. Cheng, Mengtao Sun,* Unified treatment for photoluminescence and scattering of coupled metallic nanostructures: I. Two-body system, New J. Phys. 24, 033026 (2022).
6. C. Li, et al., Mengtao Sun,* Spectral investigation on single molecular optoelectronics of ladder phenylenes, Spectrochim. Acta, Part A 278, 121283 (2022).
7. W. Li, Z. Yang, Mengtao Sun,* J. Dong,* Interlayer interactions in transition metal dichalcogenides heterostructures, Rev. Phys. 9, 100077 (2022).
8. L. Sun, Y. Chen, Mengtao Sun,* Y. Zheng*, Physical Mechanism of Fluorescence and Chirality of Functionalized Graphene Quantum Dots, J. Phys. Chem. C 126, 12845−12859 (2022).
9. Lin Cui, et al., Mengtao Sun,* In situ Plasmon-Enhanced CARS and TPEF for Gram staining identification of non-fluorescent bacteria, Spectrochim. Acta, Part A 264, 120283 (2022).
10. Yi Cao, Yuqing Cheng, Mengtao Sun,* Graphene-based SERS for sensor and catalysis, Appl. Spectrosc. Rev. 57, DOI: 10.1080/05704928.2021.1910286, (2022).
专著:
1. 孙萌涛, 穆希皎,李睿,Linear and Nonlinear Optical Spectroscopy and Microscopy, 清华大学出版社,2021.
2. 孙萌涛,王鑫鑫,宗欢,plasmon and plasmon-exciton hybrids for surface catalytic reactions,清华大学出版社, 2019。
3. 孙萌涛,全军, plasmon-enhanced fluorescence: principle and applications,清华大学出版社, 2019。
4. 孙萌涛,林炜桦,梁文杰,plasmon-exciton interaction: principle and applications,清华大学出版社, 2018。
5. 孙萌涛,林炜铧,王荣明,Tip-enhanced Raman and fluorescence spectroscopy,科学出版社, 2017 。
6. 孙萌涛,宋朋,马凤才,Photoinduced electron transfer in organic solar cell: principle and applications,科学出版社,2017.
教材:
1. 孙萌涛, 马佳林, Plasmon-enhanced molecular spectroscopy, 清华大学出版社,2022。
2. 孙萌涛,穆希皎,Computational Simulation in Nanophotonics and Spectroscopy, 清华大学出版社,2021。
3. 孙萌涛,王鑫鑫,Nanoscale photonics and spectroscopy, 清华大学出版社,2020年。
4. 孙萌涛,李源作,One and two photons absorption: mechanism and applications, 清华大学出版社,2018年。